Co-expression analysis

Gene ID Os09g0363900
Gene name
Homology with ArabidopsisSimilar to At1g72970: HTH (HOTHEAD) (HF=1e-3)
Module size 6 genes
NF 0.66
%ile 88.8

Co-expressed genes

Click gene/probe ID to show a list of genes that are co-expressed with the gene.

VF %ile CC Gene ID Repr. ID Gene name Func.EvAGI codeArabidopsis gene name O.I. H.G. S.X. Other DB
0.8395.80.93Os09g0363900AK072899.1-Mandelonitrile lyase-like protein1e-3At1g72970HTH (HOTHEAD)O.I.H.G.S.X.
0.6787.20.94Os01g0756600AK102373.1-Protein of unknown function DUF642 family protein3e-16At2g34510-O.I.H.G.S.X.
0.6787.20.94Os04g0649200AK103112.1-Plant protein of unknown function DUF869 familyprotein4e-4At2g23360transport protein-relatedO.I.H.G.S.X.
0.6181.20.94Os01g0531400AK102373.1-Protein of unknown function DUF642 family protein3e-16At2g34510-O.I.H.G.S.X.
0.5371.30.94Os04g0517000AK101663.1-Conserved hypothetical protein3e-2At1g11700unknown proteinO.I.H.G.S.X.
0.4762.30.92Os07g0205500AK103449.1-Protein of unknown function DUF239 domaincontaining protein8e-23At3g13510unknown proteinO.I.H.G.S.X.

Click More genes



Specific experiments for the module

Std2 GX %ile GSM ID Assay name GSE ID Experiment title Link to GEO
15.298.7GSM377084Genomic DNA - 45 day old leaf sample - mutant f1856GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
13.898.5GSM422672DroughtGSE16865Heterologous microarrays for the study of drought stress in MusaLink to GEO
11.798.2GSM377075Genomic DNA - 45 day old leaf sample - mutant g650GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
11.098.2GSM377073Genomic DNA - 45 day old leaf sample - mutant d2943GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
10.698.1GSM377071Genomic DNA - 45 day old leaf sample - mutant d256GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
10.398.1GSM377072Genomic DNA - 45 day old leaf sample - mutant d1137GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
9.697.9GSM377077Genomic DNA - 45 day old leaf sample - mutant g6489GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
9.297.9GSM377070Genomic DNA - 45 day old leaf sample - mutant d1GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
9.297.9GSM377086Genomic DNA - 45 day old leaf sample - IR64 wtcheckGSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
9.097.8GSM377076Genomic DNA - 45 day old leaf sample - mutant g6485GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO

Biological processes inferred to relate to the module

SFGenesGO IDProcess NameLink to AmiGO

Inter-species module comparison

A co-expression module including the Arabidopsis gene, At1g72970, orthologous to the query gene, Os09g0363900

VF%ileGene IDRepr. IDGene NameFunc.O.I.H.G.S.X.Other DB
0.1912.7At1g72970843628HTH (HOTHEAD)Originally identified as a mutation that causes floral organs to fuse together. About 10-20% of mutants also have defects in ovules. Mutants have reduced fertility most likely as because of fusions that pistil emergence. The protein has similarity to the mandelonitrile lyase family of FAD containing oxidoreductases and is predicted to be secreted (SignalP).It is expressed in all tissue layers of roots, inflorescences, stems, leaves, and flowers and is also expressed in siliques. Expression is highest in inflorescence and flower tissue.Transmission of mutant alleles to the progeny shows non mendelian segregation- a percentage of mutant alleles revert back to a previous parental (e.g. grandparental) wild type allele. It has been suggested that an RNA template driven or other extra-DNA genomic mechanism may be responsible for the non-mendelian inheritance of HTH. Reversion events in alleles at other loci have also been observed to occur in plants with an hth mutant background indicating a genome wide effect.O.I.H.G.S.X.
0.5065.3At5g23940832459EMB3009 (embryo defective 3009)F:transferase activity, transferring acyl groups other than amino-acyl groups, transferase activity;P:embryonic development ending in seed dormancy;C:cellular_component unknown;PFBOO.I.H.G.S.X.
0.4457.2At1g24020839014MLP423 (MLP-LIKE PROTEIN 423)F:unknown;P:response to biotic stimulus, defense response;C:membrane;PBOO.I.H.G.S.X.
0.4050.8At1g51460841571ABC transporter family proteinF:ATPase activity, coupled to transmembrane movement of substances;P:transport;C:membrane;BOMFAPVO.I.H.G.S.X.
0.4050.8At3g18850821418LPAT5F:acyltransferase activity;P:metabolic process;C:unknown;MBOFPVO.I.H.G.S.X.
0.4050.8At3g55110824677ABC transporter family proteinF:ATPase activity, coupled to transmembrane movement of substances;P:transport;C:membrane;BOMAFPVO.I.H.G.S.X.

Select a plant to compare co-expressed genes between species.
Glycine_max
Hordeum_vulgare
Populus_trichocarpa
Triticum_aestivum
Vitis_vinifera
Zea_mays



Back to the CoP portal site

Back to the KAGIANA project homepage